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BRAMPTON MANOR INTEGRATION REVISION PACK - made by oxford graduates to guarantee an A* in Maths

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The hardest Integration questions to prepare you for AS and A2 integration - made by Brampton manor maths teachers, the school with the highest performing maths department in the UK! These questions are intricately designed to be very hard, accelerating your understanding of all the various methods of Integration -- mastering the questions on these packs will boost your grade significantly, because Integration is the most frequent mathematical topic to come up in A Level Maths. Answers are provided with every pack except for the AS one, if you get stuck on this, ask your teacher. If you don't understand the model solutions for the rest of the packs, ask your teacher for a more in-depth explanation. This is the highest quality Integration revision resource ever made, made for just Brampton Manor students. Since this is exclusive material for brampton, this will boost your grade higher than ever before, putting you ahead of the rest of the country.

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Uploaded on
April 13, 2025
Number of pages
19
Written in
2024/2025
Type
Exam (elaborations)
Contains
Questions & answers

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A2 Pure Topic Revision:
Integration

Teacher Led Questions

, 1. Standard Results
A) Easy integra on (from AS pure)



B) Reverse chain rule



C) Trig from formula booklet



D) Rearrange using trig iden es




2. Frac on 2. Integra on by Parts?
A) ln func on Two func ons mul plied together where one
of them “simplifies” when you differen ate
it.
B) Bring up the denominator
Examples:

C) Split the numerator



D) Algebraic division if frac on is improper



E) Par al frac ons




3. Subs tu on
Typically the inner func on is u but usually the ques on
will give you the u-subs tu on.

, Example
1. Identify which process to use for each integration below
(You do not need to solve the integral)
Z Z 2 12 p
(a) x cos x dx (k) x 2x 1 dx u = 2x 1
1
2


Z 2 Z
(b) xe x
dx x
(l) dx u = 2x 3
0 (2x 3)2

Z 6 Z
x 1 p
(c) p dx u=x 2 (m) p sin x dx
3 x 2 x

Z Z
x ln x
(d) p dx u=1 x2 (n) dx
1 x2 x

Z Z
1 p
(e) d✓ (o) x x + 1 dx u=x+1
cos2 2✓

Z Z
1 ⇡
(f) dx (p) x sin x dx
(2x 3)3 0


Z Z
1 x 1
(g) p dx (q)
2
x2 e2x dx
x
0


Z Z
x2 1
(h) dx (r) (x + ex )2 dx
x3 3x + 1

Z Z
1p
(i) ln x dx (s) x2 cos x dx
x

Z 2 Z
2x 1
(j) dx u=x+1 (t) e7x dx
1 (x + 1)2




2
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